[1]敖雁,吴启,周桂生.转基因番茄的研究进展[J].北方园艺,2017,41(22):160-166.[doi:10.11937/bfyy.20172032]
 AO Yan,WU Qi,ZHOU Guisheng.Research Progress on Transgenic Tomatoes[J].Northern Horticulture,2017,41(22):160-166.[doi:10.11937/bfyy.20172032]
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转基因番茄的研究进展

参考文献/References:

[1]PARRELLA G,MORETTI A,GOGNALONS P,et al.The am gene controlling resistance to alfalfa mosaic virus in tomato is located in the cluster of dominant resistance genes on chromosome 6[J].Phytopathology,2004,94(4):345-350.

[2]HU Z,LIU G,GAO J,et al.Tomato 〖STBX〗TM-22〖STBZ〗 gene confers multiple resistances to TMV,TOMV,PVX,and PVY to cultivated potato[J].Russian Journal of Plant Physiology,2015,62(1):101-108.
[3]PRATAP D,RAJ S K,KUMAR S,et al.Coat protein-mediated transgenic resistance in tomato against a ib subgroup cucumber mosaic virus strain[J].Phytoparasitica,2012,40(4):375-382.
[4]LIAO Q S,TU Y F,CARR J P,et al.An improved cucumber mosaic virus-based vector for efficient decoying of plantmicroRNAs[J].Scientific Reports,2015,5:13178.
[5]ANBINDER I,REUVENI M,AZARI R,et al.Molecular dissection of tomato leaf curl virus resistance in tomato line ty172 derived from Solanum peruvianum[J].Theor Appl Genet,2009,119(3):519-530.
[6]CHEN H M,LIN C Y,TSAI W S,et al.Resistance to viral yellow leaf curl in tomato through RNAi targeting two begomovirus speciesstrains[J].Journal of Plant Biochemistry andBiotechnology,2016,25(2):199-207.
[7]高建昌,杜永臣,王孝宣,等.番茄抗虫育种研究进展[J].中国蔬菜,2007,1(3):38-42.
[8]黄锡志,寿森炎,廖乾生.转基因番茄研究进展[J].北方园艺,2001(3):29-31.
[9]SAKER M M,SALAMA H S,SALAMA M,et al.Production of transgenic tomato plants expressing 〖STBX〗Cry 2Ab 〖STBZ〗gene for the control of some lepidopterous insects endemic inEgypt[J].Journal of Genetic Engineering and Biotechnology,2011,9(2):149-155.
[10]GHOSHAL D,SEN S K,GOYAL A.Introduction andexpression of cowpea trypsin inhibitor (CpTI) gene in transgenic tobacco[J].Plant Biochemistry and Biotechnology,2001,10(1):19-24.
[11]YANG X,LI L,CAI X X,et al.Efficacy of insect-resistance Bt/CpTI transgenes in F5-F7 generations of rice crop-weed hybrid progeny:Implications for assessing ecological impact of transgene flow[J].Science Bulletin,2015,60(18):1563-1571.
[12]ABDEEN A,VIRGO A,OLIVELLA E,et al.Multipleinsect resistance in transgenic tomato plants over-expressing two families of plant proteinase inhibitors[J].Plant Molecular Biology,2005,57(2):189-202.
[13]CHAN Y L,HE Y,HSIAO T T,et al.Pyramiding tarocystatin and fungal chitinase genes driven by asynthetic promoter enhances resistance in tomato to root-knot nematode meloidogyne incognita[J].Plant Science,2015,231:74-81.
[14]SELLAMI S,JAMOUSSI K.Investigation of larvae digestive beta-glucosidase and proteases of the tomato pest tuta absoluta for inhibiting the insect development[J].Bulletin of Entomological Research,2016,106(3):406-414.
[15]LI F,WU Q Y,DUAN M,et al.Transgenic tomato plants overexpressing chloroplastic monodehydro-ascorbate reductase are resistant to salt-and PEG-induced osmotic stress[J].Photosynthetica,2012,50(1):120-128.
[16]LI J H,OUYANG B,WANG T T,et al.〖STBX〗HyPRP1 〖STBZ〗gene suppressed by multiple stresses plays a negative role in abiotic stress tolerance in tomato[J].Frontiers in Plant Science,2016(7):1-14.
[17]VIVEROS M F A,INOSTROZA-BLANCHETEAU C,TIMMERMANN T,et al.Overexpression of GlyI and GlyII genes in transgenic tomato (Solanum lycopersicum Mill.) plantsconfers salt tolerance by decreasing oxidative stress[J].Molecular Biology Reports,2013,40(4):3281-3290.
[18]CAI X F,ZHANG C J,SHU W B,et al.The transcription factor SlD of 22 involved in ascorbate accumulation and salinity stress intomato[J].Biochemical and Biophysical ResearchCommunications,2016,474(4):736-741.
[19]WANG H S,YU C,TANG X F,et al.A tomato endoplasmic reticulum (ER)-type omega-3 fatty acid desaturase (LeFAD3) functions in early seedling tolerance to salinitystress[J].Plant Cell Reports,2014,33(1):131-142.
[20]KUMAR S R,KIRUBA R,BALAMURUGAN S,et al.Carrot antifreeze protein enhances chilling tolerance in transgenic tomato[J].Acta Physiol Plant,2014,36(1):21-27.
[21]SUBRAMANIAN P,KRISHNAMOORTHY R,CHANRATANA M,et al.Expression of an exogenous 1-aminocyclopropane-1-carboxylate deaminase gene in psychrotolerant bacteria modulates ethylene metabolism and cold induced genes in tomato under chilling stress[J].Plant Physiology and Biochemistry,2015,89:18-23.
[22]GOYAL R K,FATIMA T,TOPUZ M,et al.Pathogenesis-related protein 1b1 (PR1b1) is a major tomato fruit proteinresponsive to chilling temperature and upregulated in high polyamine transgenic genotypes[J].Frontiers in Plant Science,2016,7:901.
[23]SUN T J,LIN F H,CAMPBELL R L,et al.An antifreeze protein folds with an interior network of more than 400 semi-clathrate waters[J].Science,2014,343(6172):795-798.
[24]ZHU Z,DING Y,ZHAO J H,et al.Effects of postharvest gibberellic acid treatment on chilling tolerance in cold-storedtomato (Solanum lycopersicum L.) fruit[J].Food and Bioprocess Technology,2016,9(7):1202-1209.
[25]LI P Y,YIN F,SONG L J,et al.Alleviation of chilling injury in tomato fruit by exogenous application of oxalic acid[J].Food Chemistry,2016,202:125-132.
[26]ZHANG Y,LIU H,LI B,et al.Generation of selectable marker-free transgenic tomato resistant to drought,cold andoxidative stress using the Cre/loxP DNA excision system[J].Transgenic Research,2009,18(4):607-619.
[27]LYU J I,MIN S R,LEE J H,et al.Overexpression of atrehalose-6-phosphate synthase/phosphatase fusion gene enhances tolerance and photosynthesis during drought and salt stress without growth aberrations in tomato[J].Plant Cell Tiss Organ Cult,2013,112(2):257-262.
[28]SUN X C,GAO Y F,LI H R,et al.Over-expression ofSlWRKY39 leads to enhanced resistance to multiple stress factors in tomato[J].Journal of Plant Biology,2015,58(1):52-60.
[29]SALEEM M Y,AKHTAR K P,IQBAL Q,et al.Development of tomato hybrids with multiple disease tolerance[J].Pakistan Journal of Botany,2016,48(2):771-778.
[30]FIRSOV A P,PUSHIN A S,KORNEEVA I V,et al.Transgenic tomato plants as supersweet protein thaumatin IIproducers[J].Applied Biochemistry and Microbiology,2012,48(9):746-751.
[31]REDDY C S,VIJAYALAKSHMI M,KAUL T,et al.Improving flavour and quality of tomatoes by expression of synthetic gene encoding sweet protein monellin[J].Mol Biotechnol,2015,57:448-453.
[32]SAGOR G H M,BERBERICH T,TANAKA S,et al.Anovel strategy to produce sweeter tomato fruits with high sugar contents by fruit-specific expression of a single bZIP transcription factor gene[J].Plant Biotechnology Journal,2016,14(4):1116-1126.
[33]BEAUVOIT B P,COLOMBIE S,MONIER A,et al.Model-assisted analysis of sugar metabolism throughout tomato fruitdevelopment reveals enzyme and carrier properties in relation to vacuole expansion[J].The Plant Cell,2014,26(8):3224-3242.
[34]HUANG Y X,YIN Y G,SANUKI A,et al.carboxykinase (PEPCK) deficiency affects the germination,growth and fruit sugar content in phosphoenolpyruvate tomato (Solanum lycopersicum L.)[J].Plant Physiology and Biochemistry,2015,96:417-425.
[35]IKEDA H,SHIBUYA T,IMANISHI S,et al.Dynamicmetabolic regulation by a chromosome segment from a wildrelative during fruit development in a tomato introgression line,IL8-3[J].Plant and Cell Physiology,2016,57(6):1257-1270.
[36]SUN L,SUN Y F,ZHANG M,et al.Suppression of 9-cis-epoxycarotenoid dioxygenase,which encodes a key enzyme inabscisic acid biosynthesis,alters fruit texture in transgenic tomato[J].Plant Physiology,2012,158(1):283-298.
[37]SCHOUTENA R E,WOLTERING E J,TIJSKENS L M M.Sugar and acid interconversion in tomato fruits based onbiopsy sampling of locule gel and pericarp tissue[J].Postharvest Biology and Technology,2016,111:83-92.
[38]MARTIN-RODRIGUEZ J A,HUERTAS R,HO-PLAGARO T,et al.Gibberellin-abscisic acid balances during arbuscular mycorrhiza formation in tomato[J].Frontiers in Plant Science,2016(7):1273.
[39]唐绂忱.我国首次获得转多基因多抗番茄植株[J].河北农业科技,1998(3):11.
[40]叶志彪,李汉霞,刘勋甲,等.利用转基因技术育成耐贮藏番茄—“华番1号”[J].中国蔬菜,1999(1):6-10.

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备注/Memo

第一作者简介:敖雁(1974-),女,博士,副教授,现主要从事生物统计学和数量遗传学等研究工作。E-mail:350685056@qq.com.

责任作者:周桂生(1971-),男,博士,教授,现主要从事作物栽培逆境生理等研究工作。E-mail:wuqi@issas.ac.cn.
基金项目:2016年江苏高校‘青蓝工程’资助项目(中青年学术带头人);国家自然科学基金面上资助项目(31672141)。
收稿日期:2017-07-14

更新日期/Last Update: 2017-11-23